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    • 1. 发明授权
    • Adjustable transmitter power for high speed links with constant bit error rate
    • 具有恒定误码率的高速链路的可调发射机功率
    • US08233551B2
    • 2012-07-31
    • US12168621
    • 2008-07-07
    • Andy Martwick
    • Andy Martwick
    • H04L27/00
    • H04L1/0033G06F1/3203G06F1/3253H04L1/0001H04L1/20Y02D10/151
    • A method and apparatus for dynamically adjusting power of a transmitter is herein described. A transmitter transmits a pattern to a receiver at a differential voltage. The length of the pattern, in one embodiment, is selected to be a reasonable length training pattern, as not to incur an extremely long training phase. If errors are detected at the receiver in the pattern, the transmitter steps the differential voltage until errors are not detected in the pattern at the receiver. The differential voltage, where no errors are detected, is scaled by a proportion of a target confidence level to a measured confidence level associated with the reasonable length training pattern. As a result, a training phase is potentially reduced and power is saved while not sacrificing confidence levels in error rates in the data exchange between the transmitter and receiver.
    • 这里描述用于动态调整发射机功率的方法和装置。 发射机以差分电压将图案发送到接收机。 在一个实施例中,模式的长度被选择为合理的长度训练模式,从而不会引起极长的训练阶段。 如果在模式中的接收器处检测到错误,则发射机步进差分电压,直到在接收机的模式中检测到错误。 通过目标可信度水平与合理长度训练模式相关联的测量置信度的比例来缩放未检测到误差的差分电压。 因此,训练阶段潜在地减少并且节省功率,同时不牺牲发射机和接收机之间的数据交换中的错误率的置信水平。
    • 2. 发明申请
    • ADJUSTABLE TRANSMITTER POWER FOR HIGH SPEED LINKS WITH CONSTANT BIT ERROR RATE
    • 用于具有恒定位错误率的高速链路的可调发射机功率
    • US20120294379A1
    • 2012-11-22
    • US13562990
    • 2012-07-31
    • Andy Martwick
    • Andy Martwick
    • H04L1/12
    • H04L1/0033G06F1/3203G06F1/3253H04L1/0001H04L1/20Y02D10/151
    • A method and apparatus for dynamically adjusting power of a transmitter is herein described. A transmitter transmits a pattern to a receiver at a differential voltage. The length of the pattern, in one embodiment, is selected to be a reasonable length training pattern, as not to incur an extremely long training phase. If errors are detected at the receiver in the pattern, the transmitter steps the differential voltage until errors are not detected in the pattern at the receiver. The differential voltage, where no errors are detected, is scaled by a proportion of a target confidence level to a measured confidence level associated with the reasonable length training pattern. As a result, a training phase is potentially reduced and power is saved while not sacrificing confidence levels in error rates in the data exchange between the transmitter and receiver.
    • 这里描述用于动态调整发射机功率的方法和装置。 发射机以差分电压将图案发送到接收机。 在一个实施例中,模式的长度被选择为合理的长度训练模式,从而不会引起极长的训练阶段。 如果在模式中的接收器处检测到错误,则发射机步进差分电压,直到在接收机的模式中检测到错误。 通过目标可信度水平与合理长度训练模式相关联的测量置信度的比例来缩放未检测到误差的差分电压。 因此,训练阶段潜在地减少并且节省功率,同时不牺牲发射机和接收机之间的数据交换中的错误率的置信水平。
    • 4. 发明申请
    • ADJUSTABLE TRANSMITTER POWER FOR HIGH SPEED LINKS WITH CONSTANT BIT ERROR RATE
    • 用于具有恒定位错误率的高速链路的可调发射机功率
    • US20100002758A1
    • 2010-01-07
    • US12168621
    • 2008-07-07
    • Andy Martwick
    • Andy Martwick
    • H04B17/00H04L25/49
    • H04L1/0033G06F1/3203G06F1/3253H04L1/0001H04L1/20Y02D10/151
    • A method and apparatus for dynamically adjusting power of a transmitter is herein described. A transmitter transmits a pattern to a receiver at a differential voltage. The length of the pattern, in one embodiment, is selected to be a reasonable length training pattern, as not to incur an extremely long training phase. If errors are detected at the receiver in the pattern, the transmitter steps the differential voltage until errors are not detected in the pattern at the receiver. The differential voltage, where no errors are detected, is scaled by a proportion of a target confidence level to a measured confidence level associated with the reasonable length training pattern. As a result, a training phase is potentially reduced and power is saved while not sacrificing confidence levels in error rates in the data exchange between the transmitter and receiver.
    • 这里描述用于动态调整发射机功率的方法和装置。 发射机以差分电压将图案发送到接收机。 在一个实施例中,模式的长度被选择为合理的长度训练模式,从而不会引起极长的训练阶段。 如果在模式中的接收器处检测到错误,则发射机步进差分电压,直到在接收机的模式中检测到错误。 通过目标可信度水平与合理长度训练模式相关联的测量置信度的比例来缩放未检测到误差的差分电压。 因此,训练阶段潜在地减少并且节省功率,同时不牺牲发射机和接收机之间的数据交换中的错误率的置信水平。